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首页> 外文期刊>Journal of bridge engineering >Vector Form Intrinsic Finite-Element Analysis for Train and Bridge Dynamic Interaction
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Vector Form Intrinsic Finite-Element Analysis for Train and Bridge Dynamic Interaction

机译:列车与桥梁动力相互作用的矢量形式本征有限元分析

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摘要

A computationally efficient method is proposed for analyzing train and bridge dynamic interaction responses based on the vector form intrinsic finite-element method. The proposed method does not need to establish a large number of complicated dynamic coupling equations for the train and bridge, in contrast to the traditional finite-element method. A train with multiple cars traveling over a railway bridge with multiple spans was analyzed, and two computational models were considered: two-axle and coach models. The effects of rail irregularity and rail ballast were also considered. In the proposed method, the bridge is modeled as mass particles linked by a series of massless beam elements, and the train is simulated by mass particles. The motions of the mass particles are governed by Newton's second law, and the central difference scheme is employed to solve the equation of motion for each mass particle. The fictitious reverse-motion procedure is employed to obtain the pure deformations of the massless beam elements, from which the internal forces exerted on the mass particles are evaluated. Assembly of the global stiffness matrix is avoided, and each mass-particle motion is calculated independently, which makes the proposed method easy and efficient. Compared with existing analytical and numerical methods, the proposed method provides simpler modeling of the dynamic interaction between the train and bridge and more efficient computation. Furthermore, the proposed method can yield very accurate results. (C) 2017 American Society of Civil Engineers.
机译:提出了一种基于矢量形式固有有限元法的列车桥动力相互作用响应分析的高效计算方法。与传统的有限元方法相比,该方法不需要为火车和桥梁建立大量复杂的动力耦合方程。分析了一辆有多辆车在跨度跨度较大的铁路桥上行驶的火车,并考虑了两个计算模型:两轴模型和教练模型。还考虑了轨道不规则和道rail的影响。在所提出的方法中,桥梁被建模为由一系列无质量梁单元链接的质量粒子,而列车则由质量粒子模拟。质量粒子的运动受牛顿第二定律控制,并采用中心差分方案求解每个质量粒子的运动方程。使用虚拟的反向运动过程获得无质量梁单元的纯变形,从中评估施加在质量粒子上的内力。避免了整体刚度矩阵的组装,并且独立地计算了每个质点运动,这使得所提出的方法简单有效。与现有的分析和数值方法相比,该方法为列车和桥梁之间​​的动力相互作用提供了更简单的建模,并且计算效率更高。此外,所提出的方法可以产生非常准确的结果。 (C)2017年美国土木工程师学会。

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